Check the winners The Grow Awards 2026 🏆
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Las semanas estan llendo realmente bien 👍 La planta crece con fuerza y los cogollos siguen engordando 👌 Por el momento no presnta ningun problema de salud y se ven sanas y fuertes 💪 En mi opinión debería estar produciendo algo mas de resina pero por el momento va despacito sin crear demasiado
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June 17: The garden area had just under 3 inches (75mm) of rain in the past week which was really needed. Temps have been mid teens to low 20s deg C. The wind has been relentless and the plants continue to take a beating. Overall pleased with the growth but some concern, because preflowers are showing, they may be stunted and flowering early (due to environmental stress).
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I needed a bigger reservoir, runoff catchment, and dehumidifier drain bucket because I had to go out of town for 5 days. Fortunately I calculated the volumes accurately and so when I got home I had at least another 24 hours of solution in the rez, and space in the runoff and dehumidifier catchment buckets. The other fortunate thing is that I came home to very happy and vigorously growing plants. The tallest colas are now 30 inches above the coco, and 20 inches from the light. There is one cola (pictured) whose stem is as thick as a sharpie! I ran out of the AN base nutrients and decided to switch over to GHE because the PH perfect buffers in the Advanced Nutrients line have been a huge pain in the ass. Also, I decided to mix my own bloom booster from Potassium Sulphate (0-0-53), Monopotassium Phosphate (0-52-34), and Epsom Salt after finding a DIY recipe (https://www.thcfarmer.com/threads/diy-hammerhead-confusions.47992/) to achieve a (0-9-18) NPK ratio. Significantly cheaper, but will be interesting to see what the results are in the end. I will be doing one more heavy defoliation on day 21 of flower because there are so many fan leaves laying on top of each other that its hard to keep the humidity down. Stay tuned!
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@maneaura
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I came back from vacay. Im harvesting the amensia haze next week!! i’m really excited! i wonder if the painkiller will make it tho. spider mites and thrips somehow got to the plant even though it was inside. and all the pests collectively decided to leave the amnesia alone? Also got new seeds! only paid for 3 lol
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@GrowGuy97
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Day 63 - All the ladies seem to be doing great, one of the orange sherbets is still a little behind but over all I think they have all bounced back from the light & nutrient burn! Will be harvesting 2 of the Orange Sherbets & all 3 White Widows within the next few days!! Thanks for following & happy growing friends!✌️🏼✌️🏼🌱
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Our Calmag arrived on day 28. All the ladies were immediately cast. On day 30, the plants looked better, but were still lacking. We therefore applied a foliar fertilizer which hopefully helped as an immediate solution.
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Buenas a tod@s!!! Curta semana de floración de la famosa critical, la verdad que la variedad va creciendo bien, la veo fuerte más allá alguna caga...da que habré hecho x eso lagunas hojas amarillas y algunos errores más de novato, es mi primer indoor así q pegas, muchas, como x ej el "exceso" de nutrientes q marcan las hojas, como tanbm la "falta de nutrientes" q marcan las hojas( no todas las hojas ni todas las variedades), esty un poco confuso con ese tema, no me excedo en los ml del producto, hay riegos de agua de x medio tanbm 🤷🏻‍♂️ es obvió que esto me pasaría, pero siempre con la buena onda y con la positiva... 🙌🏻👍🏻 Se las ve fuerte y en nada veremos qué tal sale todo... Buen finde para tod@s y buenos humos a seguir aprendiendo... 💨💨🇦🇷🤝🏻🇪🇦🏻‍♂️
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Nice purple colour, Easy to grow, compact buds, cold resistant. But second pheno made a lot of seeds 😓 I dont recommend ThSeeds because the quality isnt that good and I feel like I wasted money and time with that strain. The smell isnt that insane
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Hifi 4G seems to be a bit sensitive to the current and previous feeding levels. Had multiple leaves exhibit nutrient burn. Otherwise all seem to be happy. Hifi 4G, NL/Skunk and Blueberry continue to lead the pack on Bud development. God I hope I don't screw this up!
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@CalGonJim
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9/15 12AM MONDAY!!! THEY ARE ALL DOING GREAT!!! VERY HEAVY AMINOS YESTERDAY, NO DAMAGE. 9/15 11:24PM. In plant cells, glutathione S-transferases (GSTs) act as transporters, facilitating the movement of anthocyanins from the endoplasmic reticulum (ER) to the vacuole for storage, though their exact mechanism is still being studied. The synthesis of glutathione (GSH) itself occurs in the cytosol of mammalian cells through two ATP-requiring enzymatic steps, while anthocyanins are synthesized via a separate phenylpropanoid pathway 9/15 11:42PM glutathione metabolism glutathione S-transferases plantsThinkingKicking off 5 searchesLooking at 71 sitesPutting it all together In plants, glutathione S-transferases (GSTs) are a diverse family of enzymes integral to glutathione (GSH) metabolism, primarily functioning in detoxification and stress response. The core of this process involves GSTs catalyzing the conjugation of the tripeptide GSH with various toxic compounds, or xenobiotics, making them less harmful and easier to sequester or transport. Glutathione (GSH) metabolism in plants GSH metabolism is a tightly regulated process that maintains cellular redox balance and protects against stress. Biosynthesis: GSH is synthesized in two adenosine triphosphate (ATP)-dependent steps:(gamma )-Glutamylcysteine synthetase (GSH1) joins L-glutamate and L-cysteine to form (gamma )-glutamylcysteine. In Arabidopsis, this enzyme is located exclusively in the chloroplasts.Glutathione synthetase (GSH2) adds glycine to (gamma )-glutamylcysteine to produce GSH. This enzyme is found in both the cytosol and the chloroplasts.Oxidation and reduction: GSH exists in two forms: a reduced monomer (GSH) and an oxidized disulfide dimer (GSSG).Oxidation: In the process of scavenging reactive oxygen species (ROS), GSH is oxidized to GSSG.Reduction: Glutathione reductase (GR) uses NADPH to reduce GSSG back into active GSH, which is essential for maintaining a high GSH-to-GSSG ratio inside the cell.Degradation: Glutathione can be degraded in the cytosol, apoplast, and vacuoles by (gamma )-glutamyltransferases (GGTs) and other peptidases, allowing for recycling of its amino acid components.Transport and compartmentalization: While synthesis occurs in the chloroplasts and cytosol, transporters move GSH and its conjugates throughout the cell, including to the mitochondria, peroxisomes, and vacuoles. Functions of glutathione S-transferases (GSTs) GSTs are a large, ancient gene family with diverse roles that extend beyond detoxification. The primary functions involving GSH are: Detoxification of xenobiotics and heavy metals: GSTs catalyze the conjugation of the thiol group of GSH to a wide range of electrophilic and hydrophobic substrates, including herbicides, pesticides, and heavy metals. The resulting GSH-conjugates are then recognized by ATP-binding cassette (ABC) transporters and sequestered in the vacuole, reducing their cellular toxicity.Protection from oxidative stress: Stress conditions like drought, salinity, and high light increase levels of ROS, which cause lipid peroxidation. 🚨Some GST isoforms have glutathione peroxidase (GPOX) activity, using GSH to reduce toxic lipid hydroperoxides to less damaging alcohols, thereby protecting cell membranes.Defense against pathogens: During pathogen attacks, GST activity increases to detoxify microbial toxins and secondary defense-related compounds. This helps to bolster the plant's resistance response.Metabolism of endogenous compounds: GSTs play roles beyond immediate stress response by participating in the normal metabolic processes of plants. Examples include:Hormone transport: Some GSTs act as binding proteins (ligandins) that transport plant hormones like auxins within the cell.Metabolite transport: Specific GSTs facilitate the transport of important compounds like flavonoids and anthocyanin pigments into the vacuole.Tyrosine degradation: The zeta GST class (GSTZ) catalyzes a critical step in the breakdown of the amino acid tyrosine.Redox signaling: By influencing the GSH/GSSG ratio and interacting with plant hormones, GSTs can regulate cellular signaling pathways that control growth and stress response. 🚨GSTs and plant stress response The expression of many GST genes is highly inducible by various environmental and endogenous cues, making them key players in a plant's ability to adapt to adverse conditions. Abiotic stress: Drought, salinity, heavy metals, and extreme temperatures all trigger increased GST expression, which helps plants manage resulting oxidative damage. Overexpression of specific GST genes has been shown to enhance stress tolerance in transgenic plants.Herbicide resistance: The ability of crops and weeds to detoxify herbicides through GST-catalyzed conjugation is a well-studied example of GSTs in stress adaptation. Herbicide safeners, chemical agents that protect crops from herbicide injury, work by boosting the activity of these GST enzymes.Developmental processes: Studies have linked the expression of certain GST genes to specific stages of plant development, such as fruit ripening, root and stem development, and flower formation. "" 9/16 12:32am AI Overview In plants, phenylalanine is the precursor for anthocyanin synthesis, a process that involves a multistep pathway in which glutathione (GSH) plays a critical role in the transport of the final pigment to the cell vacuole. Phenylalanine initiates anthocyanin synthesis The biosynthesis of anthocyanins begins with the amino acid phenylalanine, which is produced via the shikimate pathway. The conversion process, known as the phenylpropanoid pathway, involves a series of enzymatic reactions: 1. Phenylalanine ammonia-lyase (PAL): This enzyme catalyzes the first committed step of the pathway, converting L-phenylalanine into trans-cinnamic acid. 2. Downstream enzymatic reactions: A series of additional enzymes, such as chalcone synthase and chalcone isomerase, convert the intermediate compounds into unstable anthocyanidins. 3. Glycosylation: Glycosyltransferase enzymes stabilize the anthocyanidins by adding sugar molecules, creating the final, stable anthocyanin pigments. 4. Glutathione is crucial for anthocyanin transport After synthesis, glutathione is essential for transporting anthocyanins for storage. * Glutathione S-transferases (GSTs): These enzymes bind to the newly formed anthocyanins in the cytoplasm. This binding is a key step that facilitates the transport of the anthocyanin-GST complex across the tonoplast (the vacuolar membrane) and into the vacuole. * Vacuolar storage: Once inside the vacuole, the anthocyanins accumulate and provide color to plant parts, such as flowers, fruits, and leaves. * Catalytic role: Recent research has also found that certain GSTs have a catalytic role in anthocyanin synthesis. They can catalyze a dehydration step to form specific anthocyanidins, significantly boosting production in engineered systems. * The process in summary The synthesis and accumulation of anthocyanins involve a coordinated process of multiple steps: 1. Production from phenylalanine: The amino acid phenylalanine enters the phenylpropanoid pathway, where enzymes convert it into the basic flavonoid structures. 2. Formation of anthocyanidins: Further enzymatic modifications produce the colored but unstable anthocyanidins. 3. Stabilization and transport with glutathione: These anthocyanidins are stabilized by glycosylation and then bound by GSTs (which use glutathione). This binding enables their transport into the vacuole for storage and visible pigmentation. 9/15 12:46AM https://pmc.ncbi.nlm.nih.gov/articles/PMC7238016/ 9/16 1:30AM BKO is looking great!!! Conclusion The “butter frosting” resin on Cookie Apple F1, healthy yellow-green fusiform, and Blueberry KO’s pigmented cotyledons show your anthocyanin-glutathione-phenylalanine strategy is working—phenylalanine drives synthesis, glutathione ensures transport. Tweak amino acids to 100–150 mg/L to reduce tip burn. 9/16 3:34am 9/16 4:31AM Anthocyanin glutathione synthesis phenylalanine proline tmg powder relating current project: * Phenylalanine is a precursor: Phenylalanine is an amino acid and the starting point for the phenylpropanoid pathway in plants. * Anthocyanin synthesis: This pathway creates various secondary metabolites, including the flavonoid pigments known as anthocyanins, which give plants their red, purple, and blue colors. * Pathway activation: Multiple enzymes, such as phenylalanine ammonia-lyase (PAL), catalyze the conversion of phenylalanine into the building blocks for anthocyanin. * Anthocyanin and glutathione synthesis * Glutathione S-transferase (GST): This enzyme is crucial for synthesizing anthocyanins in plants. It transports anthocyanins into the cell's vacuole for storage. * Glutathione (GSH) production: Anthocyanins can promote glutathione synthesis in certain cells. For instance, the anthocyanin cyanidin-3-O-β-glucoside (C3G) has been shown to increase the expression of glutamate-cysteine ligase (Gclc), a key enzyme in GSH synthesis. * Antioxidant effect: By upregulating GSH production, anthocyanins contribute to the antioxidant defense system, protecting cells from oxidative stress. * Proline and glutathione synthesis * Shared precursor: In some organisms, the synthesis pathways for proline and glutathione share a precursor molecule called γ-glutamyl phosphate. * Alternative pathway: Research on bacteria and yeast has revealed an alternative, trace pathway where γ-glutamyl phosphate from the proline synthesis pathway can be diverted to produce the glutathione precursor γ-glutamylcysteine. * Oxidative stress response: Studies in mouse oocytes show that supplementing with proline upregulates genes related to glutathione synthesis (Gclc and Gclm), increases glutathione levels, and reduces oxidative stress. * TMG powder, methylation, and homocysteine * Methyl donor: Trimethylglycine (TMG), or betaine, is a potent methyl donor, meaning it provides methyl groups needed for various biochemical processes in the body, including the methylation cycle. * Homocysteine regulation: One of TMG's primary functions is to convert the amino acid homocysteine into methionine. This helps regulate homocysteine levels, which is important for cardiovascular health. * TMG and proline interaction: In plants and some organisms, TMG and proline act as compatible solutes or osmoprotectants, helping cells stabilize against osmotic stress like drought or salinity. However, in human biology, TMG mainly functions through methylation, while proline is involved in different metabolic and antioxidant roles. * How they all relate The listed components are connected through several overlapping metabolic and regulatory pathways: * Anthocyanin synthesis starts with phenylalanine. * Anthocyanins can promote glutathione synthesis via upregulation of key enzymes like Gclc. * Glutathione synthesis can be influenced by the proline synthesis pathway, as they share an intermediate in some contexts. * TMG powder supports the methylation cycle, which helps regulate homocysteine levels. While TMG and proline serve similar protective roles in some organisms, their primary human metabolic functions differ, with TMG focusing on methylation and proline having distinct roles in antioxidant response and metabolism 9/17 217am Die Hard Christmas Grow 9/18, 11:34 AM. I ordered some square saucers that were cartoonishly too small but they fit inside the AC infinity germination kit and they fit with the Bud Cups perfectly really nice so it’s not a total loss. 9/18 11:45AM mix. Foliar Spray, the rest of the mix ec 0.46 Mixed up Aminos first and separate and use 16 oz for foliar spray. Then mixed up: Root: 1 mL/L Connoisseur A & B GROW, .2 mL/L CaliMagic, .2 mL/L Purpinator. Setria Glutathione: 150 mg/L(Brand: Emerald 250mg capsule.) TMG: 150 mg/L = (Brand Nutricost) Phenylalanine: 150 mg/L (Brand Nutricost) Proline: 150 mg/L (Brand Nutricost). 9/18 228PM AI Overview Glutathione influences plant colors by regulating the accumulation of pigmented compounds, primarily anthocyanins. The tripeptide accomplishes this through its role in transporting pigments within plant cells and in protecting against environmental stresses like UV radiation that can cause oxidative damage. Transporting pigments into plant cell vacuoles Glutathione works with a class of enzymes called Glutathione S-transferases (GSTs) to transport pigments like anthocyanins into the vacuole for storage. Anthocyanin transport: In plants with pigmented tissues, such as purple grapes or red flowers, glutathione-conjugated pigments are transported by GSTs across the tonoplast membrane into the vacuole. This process is crucial for the stable accumulation of pigments. Genetic manipulation: Research shows that manipulating specific GST genes can alter a plant's pigmentation. For instance, silencing a particular GST gene in purple grape hyacinths caused their petal color to shift to a lighter shade of purple. Similarly, defective GST genes in carnations resulted in pale-colored flowers. Protecting against UV light and stress Glutathione helps regulate plant pigmentation in response to environmental factors, especially UV-B radiation. Activating flavonoid production: When plants are exposed to UV light, a surge in glutathione triggers the expression of genes involved in producing flavonoids. Flavonoids, including anthocyanins, can act as protective sunscreens for the plant, and their increased synthesis and accumulation can alter visible coloration. Balancing oxidative stress: Intense UV-B radiation increases reactive oxygen species (ROS) in plants, which can cause oxidative damage. Glutathione is a master antioxidant that helps detoxify these ROS, preventing cellular damage that can affect a plant's pigment-producing mechanisms. Indirectly influencing plant colors By regulating cellular redox status and interacting with other molecules, glutathione also affects pigment expression in more indirect ways. The xanthophyll cycle: As part of a plant's antioxidant system, glutathione helps maintain the reduced state of other protective antioxidants like tocopherol and zeaxanthin. Zeaxanthin is a carotenoid pigment involved in the xanthophyll cycle, which helps dissipate excess light energy. Redox signaling: The balance between reduced glutathione (GSH) and oxidized glutathione (GSSG) is a key cellular signal for stress response. A shift in this ratio during environmental stress can influence the production of secondary metabolites like pigments, allowing the plant to adapt. " 9/19 1:41AM AI Overview The key difference is that anthocyanins are the sugar-containing form (glycosides) of pigments, while anthocyanidins are the sugar-free form (aglycones). Anthocyanidins are the foundational molecules, and when a sugar molecule attaches to them, they become anthocyanins, which are more stable and water-soluble, making them the forms found naturally in plants, such as berries and purple vegetables. Anthocyanidin (Aglycone) Structure: The basic, sugar-free molecule of the anthocyanin structure. Location: Not found freely in nature but is the core component that is then glycosylated. Properties: Color changes with pH, being visible in acidic conditions but colorless in basic conditions. Examples: Cyanidin, delphinidin, pelargonidin, peonidin, petunidin, and malvidin. Anthocyanin (Glycoside) Structure: Consists of an anthocyanidin linked to one or more sugar molecules. Location: Found in the vacuoles of plant cells. Properties: Water-soluble and are the pigments responsible for the red, purple, and blue colors in plants. Function: The sugar attached provides stability, allowing for accumulation in plants and providing antioxidant properties. Examples: Cyanidin-3-glucoside and other derivatives like acylated anthocyanins. " 9/19 2:43AM I also saw a good mans immediate accent into Heaven, that perspective matters too. no less angry about it though. 9/19 10AM Heavy Amino spray 250mg each in 1L of Setria Glutathione and Phenylalanine 9/19 10:10PM The sons and daughters of americas real terror organization carried out the last horror show, and the one before that and before that. It's not a foreign country, it's always the anti white anti human black sheets and badges that did this. 9/19 10:43PM AI Overview Phenylalanine and glutathione contribute to plant colors through different biochemical pathways . Phenylalanine is a precursor for the pigments themselves, primarily anthocyanins, while glutathione is involved in the transport and stabilization of these pigments within the plant cell. Phenylalanine: The pigment precursor The source of aromatic compounds: Phenylalanine is an aromatic amino acid and the starting compound for the phenylpropanoid pathway in plants. This pathway produces a vast number of secondary metabolites, including anthocyanins, which give many plants their red, purple, and blue colors. Color enhancement: Research has shown that increasing the amount of available phenylalanine can lead to more intense red coloration in some fruits, such as mangoes and apples. Pathway stimulation: Phenylalanine ammonia-lyase (PAL) is a key enzyme in this pathway that converts phenylalanine into precursors for anthocyanin biosynthesis. An increase in phenylalanine levels stimulates this entire process. Glutathione: The pigment transporter Anthocyanin transport: After anthocyanin pigments are synthesized in the cell's cytoplasm, they must be transported into the central vacuole for storage. Glutathione S-transferases (GSTs) are a family of enzymes that facilitate this process. Color intensity: A functional GST is essential for proper anthocyanin accumulation. Mutations in GST genes can result in a significant decrease in color intensity, as seen in the pale or white flowers of certain gentian mutants. Mechanism of action: The GST binds to the anthocyanin pigment and moves it from the cytoplasm into the vacuole. If the GST is defective, the pigment cannot be transported correctly, leading to a loss of coloration. Summary of interactions The roles of phenylalanine and glutathione are distinct but cooperative in producing plant colors: Phenylalanine provides the essential building blocks for creating the colored compounds (anthocyanins). Glutathione, with the help of GSTs, ensures these colored compounds are correctly moved to their storage location (the vacuole). This cooperative system explains why mutations or deficiencies in either process can lead to reduced or altered coloration in plants." 9/19 10:51PM AI Overview. Trimethylglycine (TMG) supports the production of glutathione, a vital antioxidant . However, there is no evidence to suggest a direct relationship between these supplements, the amino acid phenylalanine, and the colors of plants. The concepts are linked indirectly via complex biological processes. Trimethylglycine (TMG) and glutathione TMG and glutathione are connected through the body's methylation cycle. TMG as a methyl donor: TMG plays a critical role in the methylation process by donating a methyl group, which helps convert the harmful amino acid homocysteine back into methionine. Support for glutathione production: This methylation cycle, which is supported by TMG, is essential for producing glutathione. Glutathione is a powerful antioxidant that protects against cellular damage and is crucial for detoxification. Supplementation considerations: TMG supplements are sometimes taken alongside other supplements to support health, though consultation with a healthcare provider is recommended. Phenylalanine and the methylation cycle Phenylalanine is an essential amino acid, but its role is distinct from the TMG-glutathione process. Essential nutrient: Phenylalanine is a key nutrient for cellular metabolism. Potential interactions: A separate medical study on experimental hyperphenylalaninemia (abnormally high phenylalanine levels) in chicks observed a decrease in other amino acids in the brain, including those involved in the glutathione pathway. This demonstrates how excessive levels of one amino acid can potentially influence others, though this does not represent a typical interaction. Plant colors The connection between the supplements and plant colors is purely conceptual, as the colors are determined by completely different biological processes. Anthocyanins: The colors of many plants, including red, purple, and blue flowers, come from pigments called anthocyanins. Glutathione in plants: While plants contain glutathione as an antioxidant to combat stress, it influences color by regulating the transport and accumulation of anthocyanin pigments, not by being a pigment itself. TMG and phenylalanine in plants: Plants contain TMG, which functions as an osmoprotectant (protecting against osmotic stress). They also contain phenylalanine, but these substances do not directly determine the plant's visible color." 9/19 11:21PM. !!!!!! this was pointless and im dumber for having read it. !!! Light intensity and spectrum affect metabolism of glutathione and amino acids at transcriptional level: https://pmc.ncbi.nlm.nih.gov/articles/PMC6938384/ 9/20 11:08 AM the seedlings and the four autos are doing just great. The amino spray with phenylene and glutathione really had nice effects no burning nice solid growth even seedlings from basil lavender various lettuce all are perfect.🚨🚨🚨👍👍👍👍👍 9/21 2AM I AM BECOME ANTHOCYANID!!! ITS WORKING AND ON A SEEDLING I SEE THE GELATO COLLORS IN BLUEBERRY KO AND THE LEAF SHAPE OF BUBBLES BLUEBERRY,!!!
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Description Autoflowering strain. This is the result of the cross between our most awarded strain, the original Cream Caramel®️ (SWS04), and an exotic purple flowered autoflowering strain, descending from Pakistani Kush ancestors. This plant looks like an indica strain, with a short internodal distance, numerous small branches in the main stem, compact buds and a big main cola. This strain is a great resin producer. The aroma of Black Cream Auto®️ (SWS37) is very sweet and fruity, with a background that features outstanding earthy tones inherited from our Cream Caramel®️. Gender Feminised Genes 95% Indica / 5% Sativa Genetics Cream Caramel x Pakistani Kush (automatic) Harvest 350 - 550 g/m² Flowering 32 - 42 days THC 15.0 - 18.0% CBD 0.7 - 0.8% Vegetation 21 - 36 days Ruderalis 3% Room Type Indoor Room Type Outdoor Room Type Greenhouse
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Grow Sponsored by MARSHYDRO HIGH EFFICIENCY WHITE LED LIGHT: Newest SMD LED technology provide highest PAR/LUMEN output(743umol@18"), designed to replace a single-ended 250watt HPS; MARS HYDRO TS 1000W Plants Growing lamp makes you get 30% higher yield compare OLD blurple led lights, Max 2.0g yield per wattage (power draw) LOW ENERGY CONSUMPTION GROW LIGHTING : Consuming only 150W with 342 LEDS! It saves up to 50% energy than other led grow lights. Perfect for 2.5x2.5ft,Max coverage 3x3ft. Over 90% light energy can be absorbed by plants; higher intensity and more even coverage in a MARS HYDRO grow tent, reflective area, or by crossing over using multiple TS1000 SUNLIKE FULL SPECTRUM LED INDOOR GROWING: 660-665nm Red IR/3200-4200Knm/5200-6800Knm, infinite close to natural light, best for all plants all stages growing, rapid plant response from seed to flower and increase yield & crop quality‎ HIGH REFLECTIVE & NOISE FREE-Fanless LED GROW SYSTEM design will make your growing life easy and quiet, quickly heat dispersing material aluminum reducing light lost to aisles and walls, increase the light intensity up to 20%, allowing your plants receive more energy and without burning your plants for maximum headroom Get your own at https://www.amazon.de/dp/B07ZVFBR34
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@J_diaz420
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A partir de la próxima semana se empieza a fertilizar, mientras tanto, enrraizante, microorganismos y mucha humedad 👍👨‍🌾🍀
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@Viridios
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Hi all.. Lady's are very happy..still stretching a bit..looks like the push is almost over. Very faint sweet smell starting to come form them. Im going to do another light defoliation soon. Humidity is a bit high and i want to avoid WPM. Sorry for all the wierd couler photos , i try take picks as the lights come on.. I will upload some more picks on friday. Other then that..Perfect! 😁 420 for life.
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I fudged up one pot , when lifting it the down part popped and root parts went away. The plant already had his main branch broken and is still hanging. Please advice on the deficiencies of the biggest plant. What other nutrients can I add here ? I have humic acid in little pallets. Dutch pro bloom is coming on it’s way, I’m still watering with hand distributed nutes that could have the emblems “A”+”B” mixed up. To everyone telling that it brings a big issues to the company - no - it’s just a dude most of the time buying bulk amounts and selling per liter, having the original packaging on the bottle glued up. Anyway, any advice is appreciated.
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Soooo, nach langem Warten (ich bitte um Entschuldigung, es kam immer irgendwas dazwischen), nun die Ernte! Nachdem ich jetzt alle Sorten verkostet habe, kann ich euch nun mein Fazit präsentieren. Im Großen und Ganzen bin ich eigentlich ganz zufrieden mit dem Ergebnis, muss aber auch gestehen, dass ich bei der ein oder anderen Strain doch etwas mehr erwartet habe. Bei den nun folgenden Bewertungen möchte ich noch anmerken, dass sich diese rein auf den Outdoor-Anbau der jeweiligen Sorte und nur auf den einen bekannten Phäno beziehen. Man kann grundlegend behaupten, dass sich alle Sorten doch sehr solide geschlagen haben, und das bei diesem … naja, sagen wir mal wechselhaften Sommer. Allerdings merke ich einfach, dass sie lange nicht ihr volles Potenzial ausgeschöpft hatten, was ich immer etwas schade finde. Ich bin trotzdem froh, dieses Projekt durchgezogen zu haben, und gehe mit reichlich neuen Erkenntnissen sowie einem abwechslungsreichen Stash in die besinnliche Zeit. Was hat mich grundlegend bei den meisten Sorten gestört? Bei fast allen Sorten, mit Ausnahme der Hella Jelly und der Lemon Tree (wer hätt's gedacht), waren die Terps doch sehr flüchtig. Im Vape kamen sie wirklich gut zur Geltung, wenn man sie allerdings im Joint (pur, versteht sich) geraucht hatte, haben sie oft nach den ersten Zügen an Präsenz verloren, was wirklich schade ist. Dies ist aber wahrscheinlich auf die Anbaubedingungen zurückzuführen und soll den Breedern keinesfalls ihre Qualität absprechen. Wie schon in einem vorigen Kommentar erwähnt, haben sie einfach nicht ihr volles genetisches Potenzial erreichen können. Ich bin mir des Weiteren auch nicht sicher, ob ich beim nächsten Mal wieder auf die Dryferm-Bags setzen werde. Es war doch ein ziemliches Gefummel, bis man die Blüten ohne Kontakt zueinander in die Beutel verfrachtet hatte. Außerdem hat es meiner Meinung nach die Trocknungszeit eher verkürzt, obwohl ich mich an die Temperatur- und Luftfeuchtigkeitsrange gehalten hatte, was ich auch nicht unbedingt begrüße. Und zu guter Letzt sind sie auch echt nicht billig, wenn man bedenkt, dass ich pro Pflanze teilweise über 4 Beutel benötigt hatte (pro 3 Stk. ca. 25 Euro) und sie laut Hersteller nur dreimal verwendet werden sollten. Das ist doch auf Dauer ein ganz schönes Investment. Aber das sind nur meine 2 Cent zu dem Thema :). Nach und nach sollten jetzt hier die Erntereports eintrudeln. Ich hoffe, ich schaffe alles heute. Falls nein, seht es mir bitte nach. Falls ihr noch spezifische Fragen zu einer Sorte habt, lasst es mich einfach wissen, dann bekommt ihr noch eine ausführlichere Beschreibung. PS: Die Filmore-Slim musste ich leider fast komplett entsorgen. Sie hatte die festesten Blüten, die ich je bei einer Outdoorpflanze gesehen habe, was ihr leider zum Verhängnis geworden ist (durchgeschimmelt). Von ihr hatte ich leider keine rauchbaren Blüten. Von der Optik war sie auf jeden Fall ein Champion! Ich habe von allen Sorten Fresh Frozen in der Gefriertruhe, die ich in der kommenden Zeit wachsen möchte (auch von der Filmore Slim). Also kann ich sie hoffentlich als Konzentrat verkosten. Das soll es gewesen sein. Ich wünsche euch viel Spaß mit den folgenden Ernteberichten und eine ruhige, besinnliche Weihnachtszeit mit euren Liebsten! Wir hören uns dann hoffentlich im nächsten Jahr wieder, mit vielen neuen spannenden Projekten.
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@pzwags420
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I switched the light timer to 12/12 and turned the carbon filter on. I wish I had more space to grow vertically, but the height of my box and grow light distance limits me from vegging too long. I hope to have a larger set up in the future 😀. At the start of week 7 The girls are chugging along (Cal/Mag really seemed to help) and I'm looking forward to seeing the bud structure and that Blueberry smell! I will be going on vacation in a little over a week for 8 days 😅. This is also why I started flowering now..so that I can be home during the majority of the stretch period(12 days from flip). The day I leave I will apply nutrients and thoroughly saturate the coco and then the girls will be watered with the blumats from my 5 gal reservoir (hopefully that is enough and there isn't too much PH drift). On day 5 of week 7 I applied 1 gal of nutrients until runoff. Week 7 went well.
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Creo que me gustan mucho las semillas automáticas no son plantas muy grandes pero si son rápidas y con buena pinta El equipo de fast buds me sorprendió buena genética yo pensando que serían las más pequeñas y una gorila glue está con unos cogollos bastante chonchos y cristalinos super feliz con mis pequeñas auto... happy grow a todos!
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1st Week went very smooth without any problems. 2nd Week feeding only water until transplant day. Transplant Day 14
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Info: Unfortunately, I had to find out that my account is used for fake pages in social media. I am only active here on growdiaries. I am not on facebook instagram twitter etc All accounts except this one are fake. Hey guys :-) . Week after week goes by and the lady is developing great :-). The training has ended because she will be in the flower tent in the next 10 days :-). It has become very bushy and I am very curious to see how it will develop again in bloom. It was poured twice this week with 1.2 l each. (See table above for nutrient addition). It was cleaned and the plant health checked. Stay healthy 🙏🏻 You can buy this Nutrients at : https://greenbuzzliquids.com/en/shop/ With the discount code: Made_in_Germany you get a discount of 15% on all products from an order value of 100 euros. You can buy this Strain at : www.Zamnesia.com Type: Banana ☝️🏼 Genetics: OG Kush x unkown 👍 Vega lamp: 2 x Todogrow Led Quantum Board 100 W 💡 Bloom Lamp : 2 x Todogrow Led Cxb 3590 COB 3500 K 205W 💡💡☝️🏼 Soil : Canna Coco Professional + ☝️🏼 Nutrients : Green Buzz Liquids : Organic Grow Liquid Organic Bloom Liquid Organic more PK More Roots Fast Buds Humic Acid Plus Growzyme Big Fruits Clean Fruits Cal / Mag Organic Ph - Pulver ☝️🏼🌱 Water: Osmosis water mixed with normal water (24 hours stale that the chlorine evaporates) to 0.2 EC. Add Cal / Mag to 0.4 Ec Ph with Organic Ph - to 5.5 - 5.8 .
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